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中国科学院力学研究所机构知识库
Knowledge Management System of Institue of Mechanics, CAS
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力学所知识产出(19... [4]
等离子体与燃烧中心(... [2]
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李要建 [6]
王蕊 [6]
田君国 [6]
盛宏至 [6]
徐永香 [5]
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Indexed By:EI
Creator:李要建
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Document Type:会议论文
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Numerical simulations of the temperature and velocity fields in a plasma-arc system and equilibrium calculations of steam injected for syngas recovery from POPs
会议论文
Joint Conference: International Thermal Treatment Technologies (IT3) and Hazardous Waste Combustors (HWC), Cincinnati, OH, United states, May 18, 2009 - May 21, 2009
Authors:
Wang Y(王阳)
;
Tian JG(田君国)
;
Li YJ(李要建)
;
Wang R(王蕊)
;
Xu YX(徐永香)
;
Sheng HZ(盛宏至)
;
Sheng, H. (hz_sheng@imech.ac.cn)
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View/Download:302/32
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Submit date:2017/07/14
Arc
Cathode Jet
Cathode Spot
Destruction Efficiency
Direct Current
Electrical Energy
Energy Inputs
Energy Transformation
Environmentally-friendly
Equilibrium Calculation
Experimental Facilities
Magnetohydrodynamic Model
Magnetohydrodynamic Plasmas
Molar Ratio
Numerical Simulation
Persistent Organic Pollutants
Plasma Systems
Product Distributions
Pyrolysis Process
Steam Content
Syn-gas
Velocity Field
Numerical simulation of heat transfer and fluid flow in a DC plasma-arc reactor for the thermal treatment of hazardous wastes
会议论文
Joint Conference: International Thermal Treatment Technologies (IT3) and Hazardous Waste Combustors (HWC), Cincinnati, OH, United states, May 18, 2009 - May 21, 2009
Authors:
Deng J(邓晶)
;
Li YJ(李要建)
;
Wang R(王蕊)
;
Tian JG(田君国)
;
Xu YX(徐永香)
;
Sheng HZ(盛宏至)
;
Jing, D. (dengjing@imech.ac.cn)
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Submit date:2017/07/14
Cathode Jet
Dc Plasma
Electromagnetic Equations
Hazardous Waste Treatment
Hazardous Wastes
Heat Transfer And Fluid Flow
High Temperature
Hydrodynamic Equations
Iterative Computation
Magnetic Hydro-dynamics
Magnetic Vector Potentials
Numerical Simulation
Plasma Arc
Simulation Result
Thermal Plasma
Thermal Treatment
The formation mechanism of low leaching glassy slag during plasma arc vitrification treatment of fly ash
会议论文
Air and Waste Management Association - 27th Annual International Conference on Thermal Treatment Technologies 2008, 加拿大蒙特利尔市, 2008-05-12~2008-05-16
Authors:
Li YJ(李要建)
;
Tian JG(田君国)
;
Nie R(聂睿)
;
Wang R(王蕊)
;
Xu YX(徐永香)
;
Sheng HZ(盛宏至)
;
Li YJ(李要建)
Microsoft Word(1997Kb)
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Submit date:2009/10/28
AC plasma arc system for pyrolysis of medical waste and POPs
会议论文
27th Annual International Conference on Thermal Treatment Technologies 2008, Montreal, QC, Canada, May 12, 2008 - May 16, 2008
Authors:
Sheng HZ(盛宏至)
;
Wang R(王蕊)
;
Xu YX(徐永香)
;
Li YJ(李要建)
;
Tian JG(田君国)
Adobe PDF(537Kb)
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View/Download:315/79
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Submit date:2017/06/01
Ac Plasma Arc Technology
Active Carbons
Arc Discharges
Chinese Academy Of Sciences
Cooling Subsystems
Destruction And Removal Efficiencies
Environmental Sciences
Environmentally Friendly
Gas Cooling
Gas Reheaters
Gas Scrubbers
Gas Treatments
Hazardous Wastes
High Temperatures
Medical Wastes
Off-gas Treatment
Organic Wastes
Performance Characteristics
Persistent Organic Pollutants
Plasma Arc Furnaces
Plasma Arcs
Plasma Gasses
Plasma Systems
Plasma Technologies
Pyrolysis Process
Reaction Zones
Secondary Combustions
Sub Systems
Treatment Technologies
Numerical simulation of thermal destruction of POPs agents in a reductive plasma-arc reactor and steam injected for syngas recovery
会议论文
27th Annual International Conference on Thermal Treatment Technologies 2008, Montreal, QC, Canada, May 12, 2008 - May 16, 2008
Authors:
Tian JG(田君国)
;
Li YJ(李要建)
;
Wang R(王蕊)
;
Xu YX(徐永香)
;
Sheng HZ(盛宏至)
Adobe PDF(306Kb)
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Submit date:2017/06/01
Energy Recovery
Equilibrium
Gibbs Free Energy Minimization
Pops
Syngas
Effect of steam on the removal of HC1 by cao in a fluidized-bed incinerator
会议论文
27th Annual International Conference on Thermal Treatment Technologies 2008, Montreal, QC, Canada, May 12, 2008 - May 16, 2008
Authors:
Wang R(王蕊)
;
Wang Y(王阳)
;
Tian JG(田君国)
;
Nie R(聂睿)
;
Deng J(邓晶)
;
Li YJ(李要建)
;
Sheng HZ(盛宏至)
Adobe PDF(282Kb)
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View/Download:161/53
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Submit date:2017/06/01
Alkali Solutions
Ca-based Sorbents
Diffusion Processes
Fluidized-bed Incinerator
Hc1 Removal
Operating Temperatures
Product Layers
Reaction Processes
Removal Efficiencies
Solid Waste Incinerators
Steam Concentrations
Surface Areas
Temperature Ranges
Temperature Rises